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The simulated results emphasize the significance of the proposed method to attain the maximum power from PV with minimum motor losses.
The output voltage and frequency of the inverter are controlled to extract the maximum power from solar panel during running at different levels of irradiance and temperatures using a Teaching Learning Based Optimization (TLBO) algorithm with minimum motor losses.
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The maximum range and minimum motor speed are deduced.
The blinds had to be calibrated for a numerical value of maximum and minimum motor steps.
Earthquake related material loss was divided into three levels of none to minimum loss, moderate loss, and severe loss.
There is no accompanying sensory or motor loss.
Material loss variable was divided into three levels: none to minimum loss = 0, moderate loss = 1, and severe loss = 2.
The purpose of the optimization is to achieve a maximum efficiency and minimum losses, where the angle of PMs, split-ratio and Tmr/Tp after optimized, the motor produced the highest efficiency by 93.8%.
Despite the low cost of an induction motor, production losses due to a functional failure in the motor may be greater than the cost of the motor itself.
The measured minimum loss is 0.17 dB/cm and average loss is about 0.5 dB/cm.
Maximum global performance means minimum heat loss to the ambient, minimum pressure loss, and minimum exergy destruction.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com